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Fabrication Characterization and Properties of Poly (Ethylene-Co-Vinyl Acetate) Composite Thin Films Doped with Piezoelectric Nanofillers

机译:压电纳米填料掺杂的聚(乙烯-乙酸乙烯-乙酸乙烯酯)复合薄膜的制备表征和性能

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摘要

Ethylene vinyl acetate (EVA) is a copolymer comprehending the semi-crystalline polyethylene and amorphous vinyl acetate phases, which potentially allow the fabrication of tunable materials. This paper aims at describing the fabrication and characterization of nanocomposite thin films made of polyethylene vinyl acetate, at different polymer concentration and vinyl acetate content, doped with piezoelectric nanomaterials, namely zinc oxide and barium titanate. These membranes are prepared by solvent casting, achieving a thickness in the order of 100–200 µm. The nanocomposites are characterized in terms of morphological, mechanical, and chemical properties. Analysis of the nanocomposites shows the nanofillers to be homogeneously dispersed in EVA matrix at different vinyl acetate content. Their influence is also noted in the mechanical behavior of thin films, which elastic modulus ranged from about 2 to 25 MPa, while keeping an elongation break from 600% to 1500% and tensile strength from 2 up to 13 MPa. At the same time, doped nanocomposite materials increase their crystallinity degree than the bare ones. The radiopacity provided by the addition of the dopant agents is proven. Finally, the direct piezoelectricity of nanocomposites membranes is demonstrated, showing higher voltage outputs (up to 2.5 V) for stiffer doped matrices. These results show the potentialities provided by the addition of piezoelectric nanomaterials towards mechanical reinforcement of EVA-based matrices while introducing radiopaque properties and responsiveness to mechanical stimuli.
机译:乙烯乙酸乙烯酯(EVA)是包含半结晶聚乙烯和无定形乙酸乙烯酯相的共聚物,有可能允许制造可调材料。本文旨在描述由聚乙烯乙酸乙烯酯制成的纳米复合薄膜的制备和表征,该薄膜在不同的聚合物浓度和乙酸乙烯酯含量下掺杂了压电纳米材料,即氧化锌和钛酸钡。这些膜是通过溶剂浇铸制备的,厚度约为100–200 µm。纳米复合材料的特征在于形态,机械和化学性质。纳米复合材料的分析表明,纳米填料以不同的乙酸乙烯酯含量均匀分散在EVA基质中。在薄膜的机械性能中也注意到了它们的影响,该薄膜的弹性模量为约2至25 MPa,而伸长率断裂为600%至1500%,拉伸强度为2至13 MPa。同时,掺杂的纳米复合材料的结晶度要比裸露的纳米复合材料高。通过添加掺杂剂所提供的射线不透性得到证明。最后,证明了纳米复合膜的直接压电性,显示出更高的电压输出(高达2.5 V),适用于更坚硬的掺杂基质。这些结果表明,通过添加压电纳米材料可对基于EVA的基质进行机械增强,同时引入不透射线的性能和对机械刺激的响应能力,提供了潜力。

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